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Disks around the nearest stars and substars

  • Physics of Stars and Interstellar Medium
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Abstract

We present a review of a publication concerning the problem of the existence of disks around stars and substars within 10 pc from the Solar System; outline the present-day concepts of the astrophysical properties of circumstellar disks and problems connected with and results of their search and detection, on the basis of the IR-excesses in the spectrum of the nearest stellar/substellar systems; discuss some data on the nearest stellar and substellar population; give a list of circumstellar discs discovered within 10 pc from the Sun and their main astrophysical properties; and briefly discuss disk structure yielded by images taken in different spectral bands.

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References

  1. Yu. V. Aleksandrov and V. A. Zakhozhai, “Just what are Planets,” Astron. Vestn. 14, 129–132 (1980).

    ADS  Google Scholar 

  2. Yu. V. Aleksandrov and V. A. Zakhozhai, “Problems Concerning Extrasolar Planets in the Galaxy,” Astron. Vestn. 17, 131–144 (1983).

    ADS  Google Scholar 

  3. Yu. V. Aleksandrov and V. A. Zakhozhai, “Existence of Planet Systems in Galaxy and Problems of Their Search,” in Search Problems of the Life in Universe (Nauka, Moscow, 1986), pp. 201–210 [in Russian].

    Google Scholar 

  4. D. Black and G. K. D. Suffolk, “Satellites of Barnard Star from the Perturbation Theory Point of View,” in The Origin of the Solar System, Ed. by G. Reeves (Wiley, New York, 1978; Mir, Moscow, 1976), pp. 496–500.

    Google Scholar 

  5. R. E. Gershberg, “Main Scientific Achievements of Laboratory of Star and Galaxy Physics,” Izv. Krym. Astrofiz. Observ. 104, 49–54 (2008).

    Google Scholar 

  6. T. Gold, “Other Planetary Systems,” in SETI Problem (Search for ExtraTerrestrial Intelligence), Ed. by S. A. Kaplan (Mir, Moscow, 1975), pp. 15–25 [in Russian].

    Google Scholar 

  7. V. P. Grinin, P. P. Petrov, and N. I. Shakhovskaya, “Results of Spectroscopic and Photometric Observations of RW Aurigae. I. Variability of Balmer Lines,” Izv. Krym. Astrofiz. Observ. 71, 109–127 (1985).

    ADS  Google Scholar 

  8. V. A. Zakhozhai, “Nearest Stars,” Vestn. Khark. Univ. 190, 52–77 (1979).

    Google Scholar 

  9. V. A. Zakhozhai, “Luminosity Function and Space Dencity of the Nearest Stars,” Astrom. Astrofiz., No. 42, 64–69 (1980).

  10. V. A. Zakhozhai, “Additions and Corrections of Catalogue of Nearest Stars until 10 Pc,” Vestn. Khark. Univ. 232, 64 (1982).

    Google Scholar 

  11. V. A. Zakhozhai, “Statistical Properties of Stars and Multiple Systems until 10 pc,” in Astronomic-Geodesical Studies: Nearby Double and Multiple Stars (UrGU, Sverdlovsk, 1990), pp. 44–54 [in Russian].

    Google Scholar 

  12. V. A. Zakhozhai, “Masses of Nearest Stars,” Kinem. Fiz. Nebesn. Tel 10, 68–73 (1994).

    ADS  Google Scholar 

  13. V. A. Zakhozhai, “Radii and Spectra of Nearest Stars,” Kinem. Fiz. Nebesn. Tel 18, 535–552 (2002).

    ADS  Google Scholar 

  14. V. A. Zakhozhai, “Problems of Planetary Systems Existence. II. Expected Properties and First Search Results,” Visnik Astron. Shkoli 4(2), 55–72 (2005).

    Google Scholar 

  15. V. A. Zakhozhai, “Statistical Lows in Stellar Systems,” Doctoral Dissertation in Mathematics and Physics (Kharkov, 2007).

  16. V. A. Zakhozhai, E. F. Shaparenko, V. P. Vasil’ev, and L. V. Vasil’eva, “IR-Origin in Solar Region,” Kinem. Fiz. Nebesn. Tel 10, 74–85 (1994).

    ADS  Google Scholar 

  17. A. S. Kravtsova, “Analysis of UV Spectra of T Tauri Stars,” Candidate’s Dissertation in Mathematics and Physics (Mosc. Gos. Univ., Moscow, 2004).

    Google Scholar 

  18. V. I. Moroz, “Search Methods of Extrasolar Planetary Systems,” in Problems of Search for ExtraTerrestrial Intelligence (Nauka, Moscow, 1981), pp. 171–172 [in Russian].

    Google Scholar 

  19. A. U. Rydgren, “Interpretation of T Tauri Star Observations in Infrared Region,” in Protostars and Planets, Ed. by T. Gerels (Mir, Moscow, 1982), Vol. 2, pp. 790–799 [in Russian].

    Google Scholar 

  20. T. V. Ruzmaikina, “The Angular Momentum of a Protostar Engendering a Protoplanetary Disk,” Pis’ma Astron. Zh. 7, 188–190 (1981) [Sov. Astron. Lett. 7, 104 (1981)].

    ADS  Google Scholar 

  21. V. S. Safronov, Evolution of Pre-planet Cloud and Formation of the Earth and Planets (Nauka, Moscow, 1969) [in Russian].

    Google Scholar 

  22. D. Ter Haar, “Is Barnard Star an Other Solar System?,” in The Origin of the Solar System, Ed. by G. Reeves (Wiley, New York, 1978; Mir, Moscow, 1976), pp. 502–503.

    Google Scholar 

  23. U. R. Word, “Solar System Formation,” in On the Front Edge of Astrophysics (Mir, Moscow, 1979), pp. 9–48 [in Russian].

    Google Scholar 

  24. N. I. Shakura, “Disk Model of Gas Accretion by Relativistic Star in Double System,” Astron. Zh. 49, 921–929 (1972) [Sov. Astron.16, 756 (1972)].

    ADS  Google Scholar 

  25. F. C. Adams and F. H. Shu, “Infrared Spectra of Rotating Protostars,” Astrophys. J. 308, 836–853 (1986).

    Article  ADS  Google Scholar 

  26. F. C. Adams, C. J. Lada, and F. H. Shu, “Spectral Evolution of Young Stellar Objets,” Astrophys. J. 312, 788–806 (1987).

    Article  ADS  Google Scholar 

  27. J. M. Alcala, L. Spezzi, A. Frasca, et al., “The First Brown Dwarf with a Disk in Chamaeleon II,” Astron. Astrophys. 453, L1–L4 (2006).

    Article  ADS  Google Scholar 

  28. D. Apai, K. Luhman, and M. C. Liu, “Disks around Broun Dwarfs and Cool Stars,” arXiv:astro-ph/0702286v1 (2007).

  29. D. Apai, I. Pascucci, J. Bouwman, et al., “The Onset of Planet Formation in Brown Dwarf Disks,” Science 310, 834–836 (2005).

    Article  ADS  Google Scholar 

  30. D. Apai, I. Pascucci, Th. Henning, et al., “Probing Dust Around Brown Dwarfs: The Naked LP 944-20 and the Disk of Chamaeleon H2,” Astrophys. J. 573, L115–L117 (2002).

    Article  ADS  Google Scholar 

  31. D. Apai, I. Pascucci, M. F. Sterzik, et al., “Grain Growth and Dust Settling in a Brown Dwarf Disk: Gemini/T-ReCS Observations of CFHT-BD-Tau 4,” Astron. Astrophys. 426, L53–L57 (2004).

    Article  ADS  Google Scholar 

  32. P. J. Armitage, “Lecture Notes on the Formation and Early Evolution of Planetary Systems,” arXiv:astro-ph/0701485v1 (2007).

  33. H. H. Aumann, “IRAS Observations of Matter Around Nearby Stars,” Publ. Astron. Soc. Pacif. 97, 885–891 (1985).

    Article  ADS  Google Scholar 

  34. H. H. Aumann, C. A. Beichman, F. C. Gillett, et al., “Discovery of a Shell Around Alpha Lyrae,” Astrophys. J. 278, L23–L27 (1984).

    Article  ADS  Google Scholar 

  35. H. H. Aumann and R. G. Probst, “Search for Vega-Like Nearby Stars with 12 Micron Excess,” Astrophys. J. 368, 264–271 (1991).

    Article  ADS  Google Scholar 

  36. D. E. Backman and F. C. Gillett, “Exploiting the Infrared: IRAS Observations of the Main Sequence,” in Cool Stars, Stellar Systems, and the Sun, Ed. by J. L. Linsky and R. E. Stencel (Springer, Berlin, 1987), pp. 340–360.

    Chapter  Google Scholar 

  37. D. E. Backman and F. Paresce, “Main Sequence Stars with Circumstellar Solid Material: The Vega Phenomenon,” in Protostars and Planets III, Ed. by E. H. Levy and J. I. Lunine (Univ. Arizona, Tucson), pp. 1253–1304.

  38. C. A. Beichman, G. Bryden, G. H. Rieke, et al., “Planets and Infrared Excesses: Preliminary Results from a SPITZER MIPS Survey of Solar-Type Stars,” Astrophys. J. 622, 1160–1170 (2005).

    Article  ADS  Google Scholar 

  39. D. C. Black, “In Search of Other Planetary Systems,” Space Sci. Rev. 25, 35–82 (1980).

    Article  ADS  Google Scholar 

  40. G. Bryden, C. A. Beichman, D. E. Trilling, et al., “Frequency of Debris Disks Around Solar-Type Stars: First Results from a Spitzer MIPS Survey,” Astrophys. J. 636, 1098–1113 (2006).

    Article  ADS  Google Scholar 

  41. A. J. Burgasser, J. D. Kirkpatrick, J. D. Brown, et al., “Discovery of Four Field Methane (T-Type) Dwars with the Two Micron All-Sky Survey,” Astrophys. J. 522, L65–L68 (1999).

    Article  ADS  Google Scholar 

  42. A. J. Burgasser, J. D. Kirkpatrick, and R. M. Cutri, “Discovery of Brown Dwarf Companion To the G1 570ABC: a 2MASS T Dwarf Significantly Cooler Than G1 229B,” Astrophys. J. 531, L57–L60 (2000).

    Article  ADS  Google Scholar 

  43. A. J. Burgasser, J. D. Kirkpatrick, I. N. Reid, et al., “Detection of Hα Emission in a Methane (T-Type) Brown Dwarfs,” Astron. J. 120, 473–478 (2000).

    Article  ADS  Google Scholar 

  44. N. Calvet, P. D’ Alessio, L. Hartmann, et al., “Evidence for a Developing Gap in a 10 Myr Old Protoplanetary Disk,” Astrophys. J. 568, 1008–1016 (2002).

    Article  ADS  Google Scholar 

  45. A. G. W. Cameron and M. R. Pine, “Numerical Models of the Primitive Solar Nebula,” Icarus 18, 377–406 (1973).

    Article  ADS  Google Scholar 

  46. P. Cassen, “Protostellar Disks and Planet Formation,” in Extrasolar Planets, Ed. by P. Cassen, T. Guillot, and A. Quirrenbach, Saas-Free Advanced Course 31. Swiss Society for Astrophysics and Astronomy, Ed. by D. Queloz, S. Udry, M. Mayor, and W. Benz (Springer, Berlin, Heidelberg, 2006).

    Google Scholar 

  47. C. H. Chen, B. M. Patten, M. W. Werner, et al., “A Spitzer Study of Disty Disks Around Nearby, Young Stars,” Astrophys. J. 634, 1372–1384 (2005).

    Article  ADS  Google Scholar 

  48. K.-P. Cheng, F. C. Bruhweiler, Y. Kondo, and C. A. Grady, “Newly Identified Main-Sequence A Stars with Circumstellar Dust,” Astrophys. J. Lett. 396, L83–L86 (1992).

    Article  ADS  Google Scholar 

  49. E. I. Chiang and P. Goldreich, “Spectral Energy Distributions of T Tauri Stars with Passive Circumstellar Disks,” Astrophys. J. 490, 368–376 (1997).

    Article  ADS  Google Scholar 

  50. M. Cohen, D. E. Schwartz, A. Chokshi, and R. G. Walker, “IRAS Colors of Normal Stars,” Astron. J. 93, 1199–1219 (1987).

    Article  ADS  Google Scholar 

  51. I. M. Coulson, W. R. F. Dent, and J. S. Greaves, “The Absence of CO from the Dust Peak Around Eps Eri,” Mon. Not. R. Astron. Soc. 348, L39–L42 (2004).

    Article  ADS  Google Scholar 

  52. K. L. Cruz and I. N. Reid, “Meeting the Cool Neighbors III: Spectroscopy of Northern NLTT Stars,” Astron. J. 123, 2828–2840 (2002).

    Article  ADS  Google Scholar 

  53. M. P. Fitzgerald, P. G. Kalas, G. Duchene, et al., “The AU Microscopii Debris Disk: Multiwavelength Imaging and Modeling,” Astrophys. J. 670, 536–556 (2007).

    Article  ADS  Google Scholar 

  54. J. Frank, A. King, and D. Raine, Accretion Power in Astrophysics, 3rd ed. (Cambridge Univ., Cambridge, 2002).

    Google Scholar 

  55. I. S. Glass, “JHKL Photometry of 145 Southern Stars,” Mon. Not. Astron. Soc. South. Afr. 33, 53–58 (1974).

    ADS  Google Scholar 

  56. W. Gliese, Catalogue of Nearby Stars (Braun, Karlsruhe, 1969).

    Google Scholar 

  57. W. Gliese, “Smethell’s Stars Nearer than 25 Parsecs,” Astron. Astrophys. Suppl. Ser. 44, 131–135 (1981).

    ADS  Google Scholar 

  58. W. Gliese and H. Jahreiss, “Nearby Star Data Published 1969–1978,” Astron. Astrophys. Suppl. Ser. 38, 423–448 (1979).

    ADS  Google Scholar 

  59. W. Gliese and H. Jahreiss, Catalogue of Nearby Stars, 3rd ed., Data Centre CD-ROM, Selected Astronomical Catalogs (1993).

  60. B. Goldman et al., EROS 2 Proper Motion Survey: A Field Brown Dwarf, and an L Dwarf Companion to LHS 102,” Astron. Astrophys. 351, L5–L9 (1999).

    ADS  Google Scholar 

  61. J. S. Greaves, W. S. Holland, R. Jayawardhana, et al., “A Search for Debris Disks Around Stars with Giant Planets,” Mon. Not. R. Astron. Soc. 348, 1097–1104 (2004).

    Article  ADS  Google Scholar 

  62. J. S. Greaves, W. S. Holland, G. Moriarty-Schieven, et al., “A Dustring Around Epsilon Eridani: Analog To the Young Solar System,” Astrophys. J. 506, L133–L137 (1998).

    Article  ADS  Google Scholar 

  63. J. S. Greaves, W. S. Holland, M. C. Wyatt, et al., “Structure in the Epsilon Eridani Debris Disk,” Astrophys. J. 619, L187–L190 (2005).

    Article  ADS  Google Scholar 

  64. J. S. Greaves, M. C. Wyatt, W. S. Holland, and W. R. F. Dent, “The Debris Disc Around Tau Ceti: A Massive Analogue To the Kuiper Belt,” Mon. Not. R. Astron. Soc. 351, L54–L58 (2004).

    Article  ADS  Google Scholar 

  65. E. Gullbring, L. Hartmann, C. BriceZo, and N. Calvet, “Disk Accretion Rates for T Tauri Stars,” Astrophys. J. 492, 323–341 (1998).

    Article  ADS  Google Scholar 

  66. H. J. Habing, C. Dominik, M. Jourdain De Muizon, et al., “Incidence and Survival of Remnant Disks Around Main-Sequence Stars,” Astron. Astrophys. 365, 545–561 (2001).

    Article  ADS  Google Scholar 

  67. K. E. Haisch, E. A. Lada, and C. J. Lada, “Disk Frequencies and Lifetimes in Young Clusters,” Astrophys. J. 553, L153–L156 (2001).

    Article  ADS  Google Scholar 

  68. D. A. Harper, R. F. Loewenstein, and J. A. Davidson, “On the Nature of the Material Surrounding VEGA,” Astrophys. J. 285, 808–812 (1984).

    Article  ADS  Google Scholar 

  69. P. M. Harvey, B. A. Wilking, and M. Joy, “On the Far-Infrared Excess of VEGA,” Nature 307, 441–442 (1984).

    Article  ADS  Google Scholar 

  70. I. Heinrichsen, H. J. Walker, and U. Klaas, “Infrared Mapping of the Dust Disc Around VEGA,” Mon. Not. R. Aston. Soc. 293, L78–L82 (1998).

    Article  ADS  Google Scholar 

  71. T. A. Heppenheimer, “Outline of a Theory Planet Formation in Binary Systems,” Icarus 22, 436–447 (1974).

    Article  ADS  Google Scholar 

  72. L. A. Hillenbrand, J. M. Carpenter, J. S. Kim, et al., “The Complete Census of 70 μm-Bright Debris Disks within “the Formation and Evolution of Planetary Systems” Spitzer Legacy Survey of Sun-Like Stars,” Astrophys. J. 677, 930–956 (2008).

    Article  Google Scholar 

  73. L. Hillenbrand, S. Strom, N. Carvet, et al., “Circumstellar Disks in the Orion Nebula Cluster,” Astron. J. 116, 1816–1841 (1998).

    Article  ADS  Google Scholar 

  74. J. L. Hinz, D. W. McCarthy, Jr., D. A. Simons, et al., “A Near-Infrared, Wide-Field, Proper-Motion Search for Brown Dwarfs,” Astron. J. 123, 2027–2032 (2002).

    Article  ADS  Google Scholar 

  75. W. S. Holland, J. S. Greaves, W. R. F. Dent, et al., “Submillimeter Observations of An Asymmetric Dust Disk Around Fomalhaut,” Astrophys. J. 582, 1141–1146 (2003).

    Article  ADS  Google Scholar 

  76. W. S. Holland, J. S. Greaves, B. Zuckerman, et al., “Submillimetre Images of Dusty Debris Around Nearby Stars,” Nature 392, 788–791 (1998).

    Article  ADS  Google Scholar 

  77. E. K. Holmes, H. M. Butner, S. B. Fajardo-Acosta, and L. M. Rebull, “A Survey of Nearby Main-Sequence Stars for Submillimeter Emission,” Astron. J. 125, 3334–3343 (2003).

    Article  ADS  Google Scholar 

  78. R. Jayawardhana, R. S. Fisher, C. M. Telesco, et al., “Mid-Infrared Imaging of Candidate Vega-Like Systems,” Astrophys. J. 122, 2047–2054 (2001).

    Google Scholar 

  79. H. L. Johnson, B. Iriarte, R. I. Mitchell, and W. Z. Wisniewski, “UBVRIJKL Photometry of the Bright Stars,” Comm. Lunar Planet Lab. 4, 99–110 (1966).

    ADS  Google Scholar 

  80. M. Jura, C. H. Chen, E. Furlan, et al., “Mid-Infrared Spectra of Dust Debris Around Main Sequence Stars,” Astrophys. J. Suppl. Ser. 154, 453–457 (2004).

    Article  ADS  Google Scholar 

  81. M. Jura, B. Zuckerman, E. E. Becklin, and R. C. Smith, “Constraints on the Evolution of Remnant Protostellar Dust Derbis around HR 4796,” Astrophys. J. 418, L37–L40 (1993).

    Article  ADS  Google Scholar 

  82. P. Kalas, J. R. Graham, E. Chiang, et al., “Optical Images of an Exosolar Planet 25 Light Year from Earth,” arXiv:0811. 1994v2 [astro-ph] (19 Nov 2008).

  83. P. Kalas, M. C. Liu, and B. C. Matthews, “Discovery of a Large Dust Disk Around the Nearby Star AU Microscopii,” Science 303, 1990–1993 (2004).

    Article  ADS  Google Scholar 

  84. S. J. Kenyon and L. Hartmann, “Spectral Energy Distributions of T Tauri Stars: Disk Flaring and Limits on Accretion,” Astrophys. J. 323, 714–733 (1987).

    Article  ADS  Google Scholar 

  85. M. F. Kessler, J. A. Steinz, M. E. Andregg, et al., “The Infrared Space Observatory (ISO) Mission,” Astron. Astrophys. 315, L27–L31 (1996).

    ADS  Google Scholar 

  86. J. Kessler-Silacci, J.-C. Augereau, C. P. Dullemond, et al., “C2d Spitzer IRS Spectra of Disks Around T Tauri Stars. I. Silicate Emission and Grain Growth,” Astrophys. J. 639, 275–291 (2006).

    Article  ADS  Google Scholar 

  87. J. E. Kessler-Silacci, C. P. Dullemond, J.-C. Augereau, et al., “Proding Protoplanetary Disks with Silicate Emission: Where Is the Silicate Emission Zone,” arXiv: astro-ph/0612450v1 (15 Dec 2006).

  88. J. D. Kirkpatrick et al., “Dwarfs Cooler Than “M”: The Definition of Spectral Type “L” Using Discoveries from the 2 Micron All-Sky Survey (2MASS),” Astrophys. J. 519, 802–833 (1999).

    Article  ADS  Google Scholar 

  89. J. D. Kirkpatrick, I. N. Reid, J. Liebert, et al., “67 Additional L Dwarfs Discovered by the 2MASS,” Astron. J. 120, 447–472 (2000).

    Article  ADS  Google Scholar 

  90. J. E. Krist, D. R. Aradila, D. A. Colimowski, et al., “Hubble Space Telescope Advanced Camera for Surveys Coronagraphic Imaging of the AU Microscopii Debris Disk,” Astron. J. 129, 1008–1017 (2005).

    Article  ADS  Google Scholar 

  91. R. J. Laureijs, M. Jourdain De Muizon, Leech, et al., “A 25 Micron Search for Vega-Like Disks Around Main-Sequence Stars with ISO,” Astron. Astrophys. 387, 285–293 (2002).

    Article  ADS  Google Scholar 

  92. A. Lecavelier des Etangs, A. Vidal-Madjar, A. Roberge, et al., “Deficiency of Molecular Hydrogen in the Disk of Beta Pictoris,” Nature 412, 706–708 (2001).

    Article  ADS  Google Scholar 

  93. M. C. Liu, “Substructure in the Circumstellar Disk Around the Young Star AU Microscopii,” Science 305, 1442–1444 (2004).

    Article  ADS  Google Scholar 

  94. W. M. Liu, P. M. Hinz, W. F. Hoffman, et al., “Adaptive Optics Nulling Interferometric Constraints on the Mid-Infrared Exoxodiacal Dust Emission Around Vega,” Astrophys. J. 610, L125–L128 (2004).

    Article  ADS  Google Scholar 

  95. M. C. Liu, B. C. Matthews, J. P. Williams, and P. G. Kalas, “A Submillimeter Search of Nearby Young Stars for Cold Dust: Discovery of Debris Disks Around Two Low-Mass Stars,” Astrophys. J. 608, 526–532 (2004).

    Article  ADS  Google Scholar 

  96. M. C. Liu, J. Najita, and A. T. Tokunaga, “Survey for Circumstellar Disks Around Young Substellar Objects,” Astrophys. J. 585, L372–L391 (2003).

    Article  ADS  Google Scholar 

  97. F. J. Low, E. Young, D. A. Beintema, et al., “Infrared Cirrus — New Components of the Extended Infrared Emission,” Astrophys. J. 278, L19–L22 (1984).

    Article  ADS  Google Scholar 

  98. D. Lynden-Bell, “The Role of Magnetism in Spiral Structure,” Observatory 86, 57–60 (1966).

    ADS  Google Scholar 

  99. D. Lynden-Bell, “Galactic Nuclei As Collapsed Old Quasars,” Nature 223, 690–694 (1969).

    Article  ADS  Google Scholar 

  100. B. A. Macintosh, E. E. Beklin, D. Kaisler, et al., “Deep Keck Adaptive Optics Searches for Extrasolar Planets in the Dust of Epsilon Eridani and Vega,” Astrophys. J. 594, 538–544 (2003).

    Article  ADS  Google Scholar 

  101. M. Marengo, S. T. Megeath, Fazio, et al., “A Spitzer IRAC Search for Substellar Companions of the Debris Disk Star Epsilon Eridani,” Astrophys. J. 647, 1437–1451 (2006).

    Article  ADS  Google Scholar 

  102. K. A. Marsh, T. Velusamy, C. D. Dowell, et al., “Image of Fomalhaut Dust Ring at 350 Microns: The Relative Column Density Map Shows Pericenter — Apocenter,” Astrophys. J. 620, L47–L50 (2005).

    Article  ADS  Google Scholar 

  103. E. L. Martin, G. Basri, X. Delfosse, and T. Forveille, “Keck HIRES Spectra of the Brown Dwarf DENIS-P J1228. 2-1547,” Astron. Astrophys. Lett. 327, L29–L32 (1997).

    ADS  Google Scholar 

  104. E. L. Martin, X. Delfosse, G. Basri, et al., “Spectroscopic Classification of Late-M and L Field Dwars,” Astron. J. 118, 2466–2482 (2000).

    Article  ADS  Google Scholar 

  105. S. A. Metchev, L. A. Hillenbrand, and M. R. Meyer, “Ten Micron Observations of Nearby Young Stars,” Astrophys. J. 600, 435–450 (2004).

    Article  ADS  Google Scholar 

  106. M. R. Meyer, D. E. Backman, A. J. Weinberger, and M. C. Wyatt, “Evolution of Circumstellar Disks around Normal Stars: Placing our Solar System in Context,” arXiv:astro-ph/0606399v1 (2006).

  107. M. R. Meyer, L. A. Hillenbrand, D. E. Backman, et al., “The Formation and Evolution of Planetary Systems: First Results from a Spitzer Legacy Science Program,” Astrophys. J. Supp. Ser. 154, L422–L427 (2004).

    Article  ADS  Google Scholar 

  108. M. Min, C. Dominik, and L. B. F. M. Waters, “Spectroscopic Diagnostic for the Mineralogy of Large Dust Grains,” Astron. Astrophys. 413, L35–L38 (2004).

    Article  ADS  Google Scholar 

  109. S. Mohanty, R. Jayawardhana, and G. Basri, “The T Tauri Phase Down to Nearly Planetary Masses: Echelle Spectra of 82 Very Low Mass Stars and Brown Dwarfs,” Astrophys. J. 626, 498–522 (2005).

    Article  ADS  Google Scholar 

  110. S. Mohanty, R. Jayawardhana, A. Natta, et al., “Flared Disks and Silicate Emission in Young Brown Dwarfs,” Astrophys. J. 609, L33–L36 (2004).

    Article  ADS  Google Scholar 

  111. T. Nakajima, B. R. Oppenheimer, S. R. Hulkarni, et al., “Discovery of a Cool Brown Dwarf,” Nature 378(6556), 463–465 (1995).

    Article  ADS  Google Scholar 

  112. A. Natta, L. Testi, F. Comeryn, et al., “Exploring Brown Dwarf Disks in ρ Ophiuchi,” Astron. Astrophys. 393, 597–609 (2002).

    Article  ADS  Google Scholar 

  113. G. Neugebauer, H. J. Habing, R. van Duinen, et al., “The Infrared Astronomical Satellite (IRAS) Mission,” Astrophys. J. 278, L1–L6 (1984).

    Article  ADS  Google Scholar 

  114. I. Pascucci, D. Apai, Th. Henning, and C. P. Dullemond, “The First Detailed Book at a Brown Dwarf Disk,” Astrophys. J. 590, L111–L114 (2003).

    Article  ADS  Google Scholar 

  115. P. P. Petrov, “Tauri Stars,” Astrophysics 46, 506–529 (2003).

    Article  ADS  Google Scholar 

  116. P. P. Petrov, G. F. Gahm, J. F. Gameiro, et al., “Non-Axisymmetric Accretion on the Classical TTS RW Aur A,” Astron. Astrophys. 369, 993–1008 (2001).

    Article  ADS  Google Scholar 

  117. P. P. Petrov, E. Gullbring, I. Ilyin, et al., “The Gas Flows of SU Aurigae,” Astron. Astrophys. 314, 821–834 (1996).

    ADS  Google Scholar 

  118. M. A. C. Perryman, “Extra-Solar Planets, Review Article,” Preprint Rep. Prog. Phys. (2000, 31 May), pp. 1–60.

  119. Publications of the United States Naval Observatory, 2d Ser. (Washington, DC, 1970), Vol. 20, part 3.

  120. Publications of the United States Naval Observatory, 2d Ser. (Washington, DC, 1972), Vol. 20, part 6.

  121. Publications of the United States Naval Observatory, 2d Ser. (Washington, DC, 1975), Vol. 24, part 1.

  122. Publications of the United States Naval Observatory, 2d Ser. (Washington, DC, 1976), Vol. 24, part 3.

  123. Publications of the United States Naval Observatory, 2d Ser. (Washington, DC, 1983), Vol. 24, part 7.

  124. A. Quirrenbach, “Detection and Characterization of Extrasolar Planets,” in Extrasolar Planets (Saas-Fee Advanced Course 31), P. Cassen, T. Guillot, and A. Quirrenbach, Swiss Soc. for Astrophys. Astron., Ed. by D. Queloz, S. Udry, M. Mayor, and W. Benz (Springer, Heidelberg, 2006).

    Google Scholar 

  125. S. Redfild, “Gas Absorption Detected from the Edge-on Debris Disk Surrounding HD 32297,” Astrophys. J. 656, L97–L100 (2007).

    Article  ADS  Google Scholar 

  126. M. J. Rees, “Opacity-Limited Hierarhieal Fragmentation and the Massed of Protostars,” Mon. Notic. Roy. Astron. Soc. 176, 483–486 (1976).

    ADS  Google Scholar 

  127. I. N. Reid, J. D. Kirkpatrick, J. E. Gizis, et al., “Four Nearby L Dwarfs,” Astron. J. 119, 369–377 (2000).

    Article  ADS  Google Scholar 

  128. J. H. Rhee, I. Song, B. Zuckerman, and M. McElwain, “Characterization of Dusty Debris Disks: The IRAS and Hipparcos Catalogs,” Astrophys. J. 660, 1556–1571 (2007).

    Article  ADS  Google Scholar 

  129. T. L. Roellig, J. E. Van Cleve, G. C. Sloan, et al., “Spitzer Infrared Spectrograph (IRS) Observations of M, L, and T Dwarfs,” Astrophys. J. 154, 438–421 (2004).

    Google Scholar 

  130. A. Scholz, R. Jayawardhana, and K. Wood, “Exploring Brown Dwarf Disks: a 1.3 mm Survey in Taurus,” Astrophys. J. 645, 1498–1508 (2006).

    Article  ADS  Google Scholar 

  131. O. Schütz, H. Böhnhardt, E. Pantin, et al., “A Search for Circumstellar Dust Disks with ADONIS,” Astron. Astrophys. 424, 613–618 (2004).

    Article  ADS  Google Scholar 

  132. N. I. Shakura and R. A. Syunyaev, “Black Holes in Binary Systems. Observational Appearance,” Astron. Astrophys. 24, 337–355 (1973).

    ADS  Google Scholar 

  133. I. Shlosman and M. C. Begelman, “Evolution of Self-Gravitating Acceretion Disks in Active Galactic Nuclei,” Astrophys. J. 341, 685–691 (1989).

    Article  ADS  Google Scholar 

  134. N. Seigler, J. Muzerolle, E. T. Young, et al., “Spitzer 24 Micron Observations of Open Cluster IC 2391 and Debris Disk Evolution of FGK Stars,” Astrophys. J. 654, 580–594 (2007).

    Article  ADS  Google Scholar 

  135. B. A. Smith and R. J. Terrile, “A Circumstellar Disk Around Beta Pictoris,” Science 226, 1421–1424 (1984).

    Article  ADS  Google Scholar 

  136. B. J. Smith, S. D. Price, and R. I. Baker, “The COBE DIRBE Point Source Catalog,” Astrophys. J. Suppl. Ser. 154, 673–704 (2004).

    Article  ADS  Google Scholar 

  137. C. Spangler, A. Sargent, M. Silverstone, et al., “Dusty Debris Around Solar-Type Stars: Temporal Disk Evolution,” Astrophys. J. 555, 932–944 (2001).

    Article  ADS  Google Scholar 

  138. K. R. Stapelfeldt, E. K. Holmes, C. Chen, et al., “First Look at the Fomalhaut Debris Disk with the Spitzer Space Telescope,” Astrophys. J., Suppl. Ser. 154, 458–462 (2004).

    Article  ADS  Google Scholar 

  139. S. A. Stern, M. C. Festou, and D. A. Weintraub, “A Map of a Collisionally Evolving Dust Disk Around Fomalhaut,” Nature 368, 312–314 (1994).

    Article  ADS  Google Scholar 

  140. S. A. Stern, J. Stocke, and P. R. Weissman, “An IRAS Search for Extra-Soar Oort Clouds,” Icarus 91, 65–75 (1991).

    Article  ADS  Google Scholar 

  141. M. V. Sykes and R. Greenberg, “The Formation and Origin of the IRAS Zodiacal Dust Bands As a Consequence of Single Collisions Between Asteroids,” Icarus 65, 51–69 (1986).

    Article  ADS  Google Scholar 

  142. R. J. Sylvester, S. K. Dunkin, and M. J. Barlow, “SCUBA Photometry of Candidate Vega-Like Sources,” Mon. Not. R. Astron. Soc. 327, 133–140 (2001).

    Article  ADS  Google Scholar 

  143. R. J. Sylvester and V. Mannings, “Optical, Infrared and Millimeter-Wave Properties of Vega-Like Systems. IV. Observations of a New Sample of Candidate Vega-Like Sources,” Mon. Not. R. Astron. Soc. 313, 73–86 (2000).

    Article  ADS  Google Scholar 

  144. R. J. Sylvester, C. J. Skinner, M. J. Barlow, and V. Mannings, “Optical, Infrared and Millimeter-Wave Properties of Vega-Like Systems,” Mon. Not. R. Astron. Soc. 279, 915–939 (1996).

    ADS  Google Scholar 

  145. J. Tarter, Interaction of Gas and Galaxies within Galaxy Clusters, PhD Thesis (Univ. Calif, Berkeley, 1975).

    Google Scholar 

  146. W. F. Thi, G. A. Blake, E. F. van Dishoeck, et al., “Substantial Reservoirs of Molecular Hydrogen in the Debris Disks Around Young Stars,” Nature 409, 60–63 (2001).

    Article  ADS  Google Scholar 

  147. R. G. Tull, P. J. MacQueen, C. Sneden, and D. L. Lambert, “The High-Resolution Cross-Dispersed Echelle White-Pupil Spectrometer of the McDonald Observatory 2.7-m Telescope,” Publ. Astron. Soc. Pacif. 107, 251–264 (1995).

    Article  ADS  Google Scholar 

  148. S. Udry, A. Eggenberger, M. Mayor, et al., “Planets in Multiple-Star Systems: Properties and Detections,” RevMexAA (Ser. de Conf.) 21, 207–214 (2004).

    ADS  Google Scholar 

  149. B. Uzpen, H. A. Kobulnicky, K. A. Olsen, et al., “Identification of Main-Sequence Stars with Mid-Infrared Excesses Using GLIMPSWE: Beta Pictoris Analogs,” Astrophys. J. 629, 512–525 (2005).

    Article  ADS  Google Scholar 

  150. P. VarniPre, J. E. Bjorkman, A. Frank, et al., “Observational Properties of Protoplanetary Disk Gaps,” Astrophys. J. 637, L125–L128 (2006).

    Article  ADS  Google Scholar 

  151. H. J. Walker and I. Heinrichsen, “ISOPHOT Observations of Dust Disks Around Main Sequence (Vega-Like) Stars,” Icarus 143, 147–154 (2000).

    Article  ADS  Google Scholar 

  152. H. J. Walker and R. D. Wolstencroft, “Cool Circumstellar Matter Around Nearbymain-Sequence Stars,” Publ. Astron. Soc. Pacif. 100, 1509–1521 (1988).

    Article  ADS  Google Scholar 

  153. L. B. F. M. Waters, J. Cote, and H. H. Aumann, “IRAS Far-Infrared Colours of Narmal Stars,” Astron. Astrophys. 172, 225–234 (1987).

    ADS  Google Scholar 

  154. L. B. F. Waters, J. Cote, and T. R. Geballe, “51 Ophiuchi (B9.5 Ve)-A Be Star in the Class of Beta Pictoris Stars?,” Astron. Astrophys. 203, 348–354 (1988).

    ADS  Google Scholar 

  155. A. J. Weinberger, E. E. Becklin, and B. Zuckerman, “The First Spatially Resolved Mid-Infrared Spectroscopy of D Pictoris,” Astrophys. J. 584, L33–L37 (2003).

    Article  ADS  Google Scholar 

  156. P. R. Weissman, “The Vega Particulate Shell-Comets Or Asteroids?,” Science 224, 987–989 (1984).

    Article  ADS  Google Scholar 

  157. R. D. Wolstencroft and H. J. Walker, “Dust Discs around Low-Main Sequence Stars,” Phil. Trans. R. Soc. London A 325, 423–437 (1988).

    Article  ADS  Google Scholar 

  158. R. Wooley, E. A. Epps, M. J. Penston, and S. B. Pocock, “Catalogue of Stars within Twenty-five Parsecs of the Sun,” R. Observ. Ann., No. 5 (1970).

  159. M. C. Wyatt, J. S. Greaves, W. R. F. Dent, and I. M. Coulson, “Submillimeter Images of a Dusty Kuiper Belt around η Corvi,” Astrophys. J. 620, 492–500 (2005).

    Article  ADS  Google Scholar 

  160. V. A. Zakhozhaj, “Astrometrical Method of Searching for Cool Satellites of Stars. Results and Perspectives,” in Extension and Connection of Reference Frames Using Ground Based CCD Technique (Nikolaev, 2001), pp. 274–283.

  161. B. Zuckerman and E. E. Becklin, “Submillimeter Studies of Main-Sequence Stars,” Astrophys. J. 414, 793–802 (1993).

    Article  ADS  Google Scholar 

  162. B. Zuckerman and I. Song, “Susty Debris Disks as Signposts of Planets: Implications for Spitzer Space Telescope,” Astrophys. J. 603, 738–743 (2004).

    Article  ADS  Google Scholar 

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Original Russian Text © V.A. Zakhozhay, O.V. Zakhozhay, 2010, published in Kinematika i Fizika Nebesnykh Tel, 2010, Vol. 26, No. 1, pp. 3–30.

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Zakhozhay, V.A., Zakhozhay, O.V. Disks around the nearest stars and substars. Kinemat. Phys. Celest. Bodies 26, 1–17 (2010). https://doi.org/10.3103/S0884591310010010

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